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Artificial breeding method of predatory mites of phytoseiidae

A technology for predatory mites and phytoseioids, applied in animal feed, animal feed, applications, etc., to achieve the effects of preventing volatilization, protecting the ecological environment, and reducing costs

Inactive Publication Date: 2014-04-23
SUN YAT SEN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The technical problem to be solved by the present invention is to overcome the technical deficiencies in the feeding of the existing predatory mites, especially the technical deficiencies in the feeding of the phytoseiidae predatory mites, and to provide a kind of breeding method with simple technology, low requirements on the feeding environment, and large-scale industrial production. Methods of Artificial Breeding of Phytoseiidae Predatory Mite

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0036] 1. Preparation of liquid feed

[0037] The preparation method of liquid feed is as follows:

[0038] S1. Add 15ml sterile water to 20 fly maggot larvae and homogenate in an electric homogenizer, then centrifuge the homogenate, and get 10ml supernatant for subsequent use;

[0039] S2. Get 5g of acarina and add 15ml of sterile water to homogenize in an electric homogenizer, then centrifuge the homogenate, and get 10ml of supernatant for subsequent use;

[0040] S3. Take 15ml of egg yolk for later use;

[0041] S4. Take 15ml of milk for later use;

[0042] S5. Take 5ml of honey for later use;

[0043] S6. After grinding the complex vitamin B and vitamin C into powder respectively, take 1g each according to the dose and place it in the container;

[0044] S7. Mix the components prepared in S1-S6 into the container of S6, add 1ml of potassium sorbate, make up the remaining amount to 100ml with sterile water, and stir well.

[0045] 2. The liquid feed is ma...

Embodiment 2

[0049] 1. Preparation of liquid feed

[0050] The preparation method of liquid feed is as follows:

[0051] S1. Add 15ml sterile water to 20 fly maggot larvae and homogenate in an electric homogenizer, then centrifuge the homogenate, and get 13ml supernatant for subsequent use;

[0052] S2. Get 5g of acarina and add 10ml of sterile water to homogenate in an electric homogenizer, then centrifuge the homogenate, and get 13ml of supernatant for subsequent use;

[0053] S3. Take 12ml of egg yolk for later use;

[0054] S4. Take 12ml of milk for later use;

[0055] S5. Take 5ml of honey for later use;

[0056] S6. after the compound vitamin B and vitamin C are ground into powder respectively, take 0.8g according to the dose and place them in the container;

[0057] S7. Mix the components prepared in S1-S6 into the container of S6, add 0.8ml of sodium benzoate, make up the rest to 100ml with sterile water, and stir well.

[0058]2. The liquid feed is made into small capsule...

Embodiment 3

[0062] 1. Preparation of liquid feed

[0063] The preparation method of liquid feed is as follows:

[0064] S1. Add 15ml sterile water to 20 fly maggot larvae and homogenate in an electric homogenizer, then centrifuge the homogenate, and get 11ml supernatant for subsequent use;

[0065] S2. Get 5g of acarid mites and add 10ml of sterile water to homogenate in an electric homogenizer, then centrifuge the homogenate, and get 11ml of supernatant for subsequent use;

[0066] S3. Take 14ml egg yolk for later use;

[0067] S4. Take 14ml of milk for later use;

[0068] S5. Take 4ml of honey for later use;

[0069] S6. After grinding the complex vitamin B and vitamin C into powder respectively, take 0.5g each according to the dose and place it in the container;

[0070] S7. Mix the components prepared in S1-S6 into the container of S6, add 1ml of propylparaben, make up the rest to 100ml with sterile water, and stir well.

[0071] 2. The liquid feed is made into small caps...

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PUM

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Abstract

The invention discloses an artificial breeding method of predatory mites of phytoseiidae. The technological process of the artificial breeding method comprises preparing liquid feed, feeding the predatory mites after the liquid feed is packaged and breeding the predatory mites. The liquid feed is packaged into a small capsule through elongated package materials and placed into a breeding device and the predatory mites are added into the breeding device to be cultivated and bred. The liquid feed comprises 20 mg every mL of compound vitamin B5 and 20 mg every mL of vitamin C5 and also comprises the following components, by volume, 10 to 30% of egg yolk, 10 to 30% of milk, 2 to 10% of honey, 10 to 50% of fly maggot homogenate, 10 to 50% of flour mite homogenate, 0.5 to 3% of preservatives and the balance water. According to the artificial breeding method of the predatory mites of the phytoseiidae, the process operation is simple, the requirements for the breeding environment are low, the breeding effect on the predatory mites is good and the large-scale industrial production can be formed.

Description

technical field [0001] The invention belongs to the technical field of raising predatory mites. More specifically, it relates to an artificial breeding method for planting predatory mite of Seidaceae. Background technique [0002] At present, the widespread occurrence and harm of agricultural and forestry crop pest mites has become a worldwide problem, and it has become the goal of international joint research on natural enemies and comprehensive agricultural management. The control of crop pest mites in my country is still dominated by chemical control. A large number of pesticides are used, which leads to a sharp increase in the resistance of pest mites, so that the dosage of pesticides is increased or the use of highly toxic pesticides is seriously left in crops, and at the same time pollutes the environment and seriously endangers Human health. [0003] The biological control strategy of crop pest mites, especially the technology of "using mites to control mites" has be...

Claims

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Application Information

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IPC IPC(8): A01K67/033A23K1/18
Inventor 赵云龙张古忍
Owner SUN YAT SEN UNIV
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